Research Lab
MIT Lincoln Laboratory Quantum Information and Integrated Nanosystems
Compare MIT Lincoln Laboratory Quantum Information and Integrated Nanosystems as a Research Lab record with headquarters, focus areas, related funding, research, Intel mentions, similar organizations, and verified sources.
Quick facts
- Category
- Research Lab
- Stage
- Nonprofit
- Headquarters
- Lexington, Massachusetts, USA
- Verified
- 2026-06-23
- Focus count
- 2 focus areas
- Top focus areas
- Defense-oriented quantum research lab, USA
Related Funding
0 linkedNo reviewed funding records are linked to this organization yet.
Related Research
6 linkedQuantum Computing - arXiv Quant-Ph New
A Quantum Optimization Framework for Data-Assimilation-Augmented Parameter Estimation
A new arXiv paper presents a hybrid workflow that keeps data assimilation and dynamical simulation classical while using a QUBO-to-Ising formulation for quantum-assisted parameter estimation.
Quantum Computing - arXiv Quant-Ph New
A scalable edge-pass Purcell filter for high-fidelity readout of superconducting qubits
A new arXiv hardware paper introduces edge-pass Purcell filters for superconducting-qubit readout, reporting 99.46% to 99.49% average readout fidelity with compact high-pass and low-pass implementations.
Quantum Computing - arXiv Quant-Ph Recent
Measurement-Feedback Quantum Information Engine: Coherence-Transition Interference and Correlated Work Statistics
A new arXiv theory paper studies how measurement feedback and correlated records shape work statistics in a quantum information engine, including a coherence-transition interference contribution.
Quantum Computing - arXiv Quant-Ph Recent
Current fluctuations in a non-additive open quantum system: breakdown of the quantum-jump approach
A new arXiv paper evaluates quantum-jump descriptions of current fluctuations in non-additive open quantum systems and identifies conditions under which imperfect jump detection recovers Landauer-Büttiker results.
Quantum Computing - arXiv Quant-Ph New
Local Uniqueness of the Born Rule on Categories with Complex-Weighted Morphisms
This arXiv preprint proves a local uniqueness result for the Born rule in small categories with complex-weighted morphisms. Under non-negativity, bounded-degree polynomiality, global phase invariance, classical-limit path additivity, and normalization, it derives the probability assignment P(z)=|z|^2 and identifies global coherence under morphism composition as an open extension.
Quantum Computing - arXiv Quant-Ph Recent
Bell nonlocality from twisted statistics
This arXiv preprint studies Bell correlations for a free real quantum scalar field on a noncommutative Moyal plane. The authors show that twist phases in multiparticle statistics can generate entanglement between wave-packet modes and that suitable local measurements can violate the CHSH Bell inequality, providing an operational probe of the noncommutative multiparticle sector.
Related Intel
0 linkedNo Intel Feed posts mention this organization yet.
Similar Organizations
6 linkedAI-suggested relationships are discovery signals for exploration, not verified partnerships or endorsements.
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Argonne National Laboratory
MIT Lincoln Laboratory Quantum Information and Integrated Nanosystems and Argonne National Laboratory are algorithmically grouped through similar technology focus signals for QAtlas ecosystem discovery.
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Brookhaven National Laboratory
MIT Lincoln Laboratory Quantum Information and Integrated Nanosystems and Brookhaven National Laboratory are algorithmically grouped through similar technology focus signals for QAtlas ecosystem discovery.
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Fermilab Superconducting Quantum Materials and Systems Center
MIT Lincoln Laboratory Quantum Information and Integrated Nanosystems and Fermilab Superconducting Quantum Materials and Systems Center are algorithmically grouped through similar technology focus signals for QAtlas ecosystem discovery.
Research Lab - Berkeley, California, USA
Lawrence Berkeley National Laboratory
Berkeley Lab supports quantum information science in materials, computing, sensing, and networking. Founded: 1931. Estimated employees: 1000+. Known funding: Government funded. Notable products: Advanced Quantum Testbed.
Research Lab - Los Alamos, New Mexico, USA
Los Alamos National Laboratory Quantum Institute
LANL conducts quantum computing, communication, sensing, and theory research. Founded: 1943. Estimated employees: 1000+. Known funding: Government funded. Notable products: LANL Quantum Institute.
Research Lab - Gaithersburg, Maryland, USA
National Institute of Standards and Technology
NIST conducts quantum information science, metrology, cryptography, standards, and quantum networking research. Founded: 1901. Estimated employees: 1000+. Known funding: Government funded. Notable products: Quantum information science programs, PQC standards.